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3D-printed splint for mallet finger injury
           A                                                    A
















           B                                                    B


















                                                                C
           C















           D
                                                                D















           Figure   9.   Stress   simulation   results   of    Figure  10.  Deflection  simulation  results  of
           topology-optimized (A) 62.51% mass, (B) 71.13%      topology-optimized (A) 62.51% mass, (B) 71.13%
           mass,  (C)  79.49%  mass,  and  (D)  original       mass,  (C)  79.49%  mass,  and  (D)  original
           three-dimensional-printed 100% mass, splints.       three-dimensional-printed 100% mass, splints.


           24                          International Journal of Bioprinting (2020)–Volume 6, Issue 2
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